TY - GEN
T1 - Study of a bus-based disruption-tolerant network
T2 - MobiCom'07: Proceedings of the 13th Annual ACM International Conference on Mobile Computing and Networking
AU - Zhang, Xiaolan
AU - Kurose, Jim K.
AU - Levine, Brian Neil
AU - Towsley, Don
AU - Zhang, Honggang
PY - 2007
Y1 - 2007
N2 - We study traces taken from UMass DieselNet, a Disruption-Tolerant Network consisting of WiFi nodes attached to buses. As buses travel their routes, they encounter other buses and in some cases are able to establish pair-wise connections and transfer data between them. We analyze the bus-to-bus contact traces to characterize the contact process between buses and its impact on DTN routing performance. We find that the all-bus-pairs aggregated inter-contact times show no discernible pattern. However, the inter-contact times aggregated at a route level exhibit periodic behavior.Based on analysis of the deterministic inter-meeting times for bus pairs running on route pairs, and consideration of the variability in bus movement and the random failures to establish connections, we construct generative route-level models that capture the above behavior. Through trace-driven simulations of epidemic routing, we find that the epidemic performance predicted by traces generated with this finer-grained route-level model is much closer to the actual performance that would be realized in the operational system than traces generated using the coarse-grained all-bus-pairs aggregated model. This suggests the importance in choosing the rightlevel of model granularity when modelingmobility-related measures such as inter-contact times in DTNs.
AB - We study traces taken from UMass DieselNet, a Disruption-Tolerant Network consisting of WiFi nodes attached to buses. As buses travel their routes, they encounter other buses and in some cases are able to establish pair-wise connections and transfer data between them. We analyze the bus-to-bus contact traces to characterize the contact process between buses and its impact on DTN routing performance. We find that the all-bus-pairs aggregated inter-contact times show no discernible pattern. However, the inter-contact times aggregated at a route level exhibit periodic behavior.Based on analysis of the deterministic inter-meeting times for bus pairs running on route pairs, and consideration of the variability in bus movement and the random failures to establish connections, we construct generative route-level models that capture the above behavior. Through trace-driven simulations of epidemic routing, we find that the epidemic performance predicted by traces generated with this finer-grained route-level model is much closer to the actual performance that would be realized in the operational system than traces generated using the coarse-grained all-bus-pairs aggregated model. This suggests the importance in choosing the rightlevel of model granularity when modelingmobility-related measures such as inter-contact times in DTNs.
KW - DTN
KW - Epidemic routing
KW - Mobility trace modeling
UR - https://www.scopus.com/pages/publications/37849041028
UR - https://www.scopus.com/pages/publications/37849041028#tab=citedBy
U2 - 10.1145/1287853.1287876
DO - 10.1145/1287853.1287876
M3 - Conference contribution
AN - SCOPUS:37849041028
SN - 9781595936813
T3 - Proceedings of the Annual International Conference on Mobile Computing and Networking, MOBICOM
SP - 195
EP - 206
BT - MobiCom'07
Y2 - 9 September 2007 through 14 September 2007
ER -